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A hybrid micro-meso-scale unit cell model for homogenization of the nonlinear orthotropic material behavior of coated fabrics used in tensioned membrane structures

(2017) COMPOSITE STRUCTURES . 162. p.271-279
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Chicago
Dinh, Tien Dung, Ali Rezaei, Lode Daelemans, Marijke Mollaert, Danny Van Hemelrijck, and Wim Van Paepegem. 2017. “A Hybrid Micro-meso-scale Unit Cell Model for Homogenization of the Nonlinear Orthotropic Material Behavior of Coated Fabrics Used in Tensioned Membrane Structures.” Composite Structures  162: 271–279.
APA
Dinh, T. D., Rezaei, A., Daelemans, L., Mollaert, M., Van Hemelrijck, D., & Van Paepegem, W. (2017). A hybrid micro-meso-scale unit cell model for homogenization of the nonlinear orthotropic material behavior of coated fabrics used in tensioned membrane structures. COMPOSITE STRUCTURES  , 162, 271–279.
Vancouver
1.
Dinh TD, Rezaei A, Daelemans L, Mollaert M, Van Hemelrijck D, Van Paepegem W. A hybrid micro-meso-scale unit cell model for homogenization of the nonlinear orthotropic material behavior of coated fabrics used in tensioned membrane structures. COMPOSITE STRUCTURES  . 2017;162:271–9.
MLA
Dinh, Tien Dung, Ali Rezaei, Lode Daelemans, et al. “A Hybrid Micro-meso-scale Unit Cell Model for Homogenization of the Nonlinear Orthotropic Material Behavior of Coated Fabrics Used in Tensioned Membrane Structures.” COMPOSITE STRUCTURES  162 (2017): 271–279. Print.
@article{8507338,
  author       = {Dinh, Tien Dung and Rezaei, Ali  and Daelemans, Lode and Mollaert, Marijke and Van Hemelrijck, Danny and Van Paepegem, Wim},
  issn         = {0263-8223},
  journal      = {COMPOSITE STRUCTURES                                        },
  language     = {eng},
  pages        = {271--279},
  title        = {A hybrid micro-meso-scale unit cell model for homogenization of the nonlinear orthotropic material behavior of coated fabrics used in tensioned membrane structures},
  url          = {http://dx.doi.org/10.1016/j.compstruct.2016.12.027},
  volume       = {162},
  year         = {2017},
}

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